Catalytic activity and autoprocessing of murine caspase-11 mediate noncanonical inflammasome assembly in response to cytosolic LPS

Author:

Akuma Daniel C1ORCID,Wodzanowski Kimberly A2ORCID,Schwartz Wertman Ronit1ORCID,Exconde Patrick M3,Vázquez Marrero Víctor R2,Odunze Chukwuma E4,Grubaugh Daniel1,Shin Sunny2ORCID,Taabazuing Cornelius3ORCID,Brodsky Igor E1ORCID

Affiliation:

1. Department of Pathobiology, University of Pennsylvania School of Veterinary Medicine

2. Department of Microbiology, University of Pennsylvania Perelman School of Medicine

3. Department of Biochemistry and Biophysics, University of Pennsylvania Perelman School of Medicine

4. University of Maryland, College Park

Abstract

Inflammatory caspases are cysteine protease zymogens whose activation following infection or cellular damage occurs within supramolecular organizing centers (SMOCs) known as inflammasomes. Inflammasomes recruit caspases to undergo proximity-induced autoprocessing into an enzymatically active form that cleaves downstream targets. Binding of bacterial LPS to its cytosolic sensor, caspase-11 (Casp11), promotes Casp11 aggregation within a high-molecular-weight complex known as the noncanonical inflammasome, where it is activated to cleave gasdermin D and induce pyroptosis. However, the cellular correlates of Casp11 oligomerization and whether Casp11 forms an LPS-induced SMOC within cells remain unknown. Expression of fluorescently labeled Casp11 in macrophages revealed that cytosolic LPS induced Casp11 speck formation. Unexpectedly, catalytic activity and autoprocessing were required for Casp11 to form LPS-induced specks in macrophages. Furthermore, both catalytic activity and autoprocessing were required for Casp11 speck formation in an ectopic expression system, and processing of Casp11 via ectopically expressed TEV protease was sufficient to induce Casp11 speck formation. These data reveal a previously undescribed role for Casp11 catalytic activity and autoprocessing in noncanonical inflammasome assembly, and shed new light on the molecular requirements for noncanonical inflammasome assembly in response to cytosolic LPS.

Funder

National Institute of Allergy and Infectious Diseases

Mark Foundation For Cancer Research

American Heart Association

Martin and Pamela Winter Infectious Disease Fellowship

Burroughs Wellcome Fund

United Negro College Fund

National Institute of General Medical Sciences

National Science Foundation

Publisher

eLife Sciences Publications, Ltd

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